Glass spacing paper laying system
By designing a compact glass spaced paper paving system and using the method of synchronous unwinding and traction module paper pulling, the existing system has solved the problems of large size, complex structure and low efficiency, and achieved efficient glass paving and simplified maintenance processes.
Patent Information
- Application Number
- CN202422504733.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-16
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-10-16
AI Technical Summary
The existing glass paper laying system is huge in size and complex in structure, which is not conducive to use and maintenance, and the paper laying efficiency is low, making it difficult to meet the needs of ultra-thin glass production.
A compact glass spaced paper paper laying system is designed, including a paper laying mechanism, countertop assembly, traction mechanism, paper pressing mechanism and filter box. It adopts the method of synchronous unwinding and traction modules to pull paper, and is equipped with two rolls of paper one for preparation and one for use to improve the paper laying rhythm.
It reduces the equipment space, improves paper laying efficiency, simplifies the maintenance process, and improves production efficiency.
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Figure CN223280151U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of glass paper laying, in particular to a glass spacer paper laying system. Background Art
[0002] At present, when producing glass, especially ultra-thin glass, an indispensable process is to lay a layer of paper between two pieces of glass to prevent the glass from sticking to each other and to facilitate subsequent deep processing. Therefore, it is particularly important to improve the efficiency of paper laying.
[0003] Conventional paper laying systems on the market are bulky and complex in structure, which are not conducive to use and maintenance. In order to better suit glass production and improve glass production efficiency, a new glass spacer paper laying system is needed. Utility Model Content
[0004] In view of the deficiencies of the existing prior art, the utility model provides a glass partition paper laying system which has high paper laying efficiency and occupies little space.
[0005] To achieve the above-mentioned purpose, the present invention provides a glass partition paper laying system, which has the following technical solutions:
[0006] The paper laying mechanism includes a paper laying base, an unwinding assembly, a paper cutting assembly, and a paper feeding assembly. The unwinding assembly, paper cutting assembly, and paper feeding assembly are all arranged on the paper laying base. The unwinding assembly includes a first unwinding station and a second unwinding station arranged adjacent to the first unwinding station. Each unwinding station is used to install a paper reel. The paper feeding assembly is located between the paper cutting assembly and the unwinding assembly. The paper feeding assembly cooperates with the unwinding assembly to synchronously unwind and discharge paper. The paper cutting assembly is used to cut glass spacer paper.
[0007] A table assembly is arranged adjacent to the paper laying mechanism, the table assembly comprising a support base and a table arranged on the support base, the table being used to provide a paper laying work surface;
[0008] A traction mechanism is provided above the table, comprising a traction module and a clamping claw assembly connected to the traction module, wherein the clamping claw assembly is used to clamp the end of the glass spacer paper from the paper laying mechanism, and the traction module is used to drive the clamping claw assembly to move forward and backward along the traction direction to pull the glass spacer paper so that it covers the table. During the traction process, the unwinding assembly, the paper feeding assembly, and the traction mechanism operate synchronously.
[0009] The paper pressing mechanism includes a first paper pressing assembly and a second paper pressing assembly. The paper cutting assembly is located between the first paper pressing assembly and the second paper pressing assembly. The first paper pressing assembly and the second paper pressing assembly are both used to fix the glass spacer paper during the paper cutting process and pass the glass spacer paper during the traction process.
[0010] Preferably, the paper laying mechanism includes a paper threading assembly, the paper threading assembly includes a first transition roller, a second transition roller, a third transition roller, and a fourth transition roller, the paper laying base has a first mounting table and a second mounting table adjacent to the first mounting table, the height of the first mounting table is lower than the height of the second mounting table, the unwinding assembly is mounted on the first mounting table, the paper cutting assembly and the paper feeding assembly are mounted on the second mounting table, the first unwinding station is arranged close to the second mounting table, the first transition roller is mounted below the first mounting table, and the second The transition roller and the third transition roller are both installed below the second mounting table. The installation height of the second transition roller is higher than the height of the first mounting table. The installation height of the third transition roller is lower than the height of the first mounting table. The fourth transition roller is installed on the second mounting table. The glass spacer paper on the paper reel on the second unwinding station passes through the first transition roller, the second transition roller, the third transition roller and the fourth transition roller in sequence to enter the paper feeding assembly. The glass spacer paper on the paper reel on the first unwinding station passes through the second transition roller, the third transition roller and the fourth transition roller in sequence to enter the paper feeding assembly.
[0011] Preferably, the table top is connected to a cylinder drive assembly, and the cylinder drive assembly is used to drive the table top to move relative to the support base along the traction direction, so that after the paper cutting is completed, the table top moves forward a preset distance along the traction direction to facilitate the gripping device to grab the glass stack.
[0012] Preferably, the table has a vacuum cavity and an air vent located above the vacuum cavity. The vacuum cavity of the table is connected to a negative pressure extraction component. After the paper cutting is completed, when the table moves forward along the traction direction, the negative pressure extraction component adsorbs the glass spacer paper on the table through the air vent and the vacuum cavity.
[0013] Preferably, the clamping jaw assembly includes a clamping jaw mounting rod and a clamping jaw structure evenly distributed on the clamping jaw mounting rod, the traction module includes a traction drive assembly and a pair of slide rails arranged in parallel and spaced apart, the two ends of the clamping jaw mounting rod are respectively arranged on the corresponding slide rails through connecting slides, and the traction drive assembly is connected to the clamping jaw mounting rod for driving the clamping jaw structure to move along the slide rails.
[0014] Preferably, the first paper pressing assembly is arranged on the paper laying base, and the first paper pressing assembly is located between the paper cutting assembly and the paper feeding assembly. The first paper pressing assembly includes a paper pressing board, a paper pressing drive mechanism connected to the paper pressing board, and a supporting profile located below the paper pressing board. The glass spacer paper passes between the paper pressing board and the supporting profile. The paper pressing drive mechanism is used to drive the paper pressing board to rise and fall relative to the supporting profile.
[0015] Preferably, the second paper pressing assembly includes a pair of columns arranged in parallel and spaced apart, the columns are arranged on the side of the table assembly, the upper ends of the columns are connected by a crossbeam, the crossbeam is arranged above the table in a direction perpendicular to the traction direction, a lifting drive assembly and a paper pressing profile arranged parallel to the crossbeam are arranged below the crossbeam, the glass spacer paper passes between the paper pressing profile and the table, the paper pressing profile is connected to the crossbeam through the lifting drive assembly, and the paper pressing profile is driven to descend and rise relative to the crossbeam by the lifting drive assembly.
[0016] Preferably, the paper cutting assembly includes a dust shield, and the dust shield is used to collect debris generated by the reciprocating motion of the drag chain in the paper cutting assembly.
[0017] Preferably, the paper feeding assembly includes a passive roller, an active roller, an increasing roller and a paper feeding drive mechanism, the passive roller is located above the active roller, the paper feeding drive mechanism is connected to the active roller, and is used to drive the active roller to rotate and drive the passive roller to rotate, the increasing roller is arranged on one side of the active roller, so that the glass spacer paper passes through the gap between the increasing roller, the active roller and the passive roller in sequence.
[0018] Preferably, the paper laying system includes a filter box, and a filter element is provided inside the filter box for filtering paper scraps generated by the paper laying system.
[0019] The glass partition paper laying system of this utility model has more compact functional components, reduces the occupied space, and fully considers the convenience during use and the rationality of later maintenance; it is equipped with two rolls of paper, one for backup and one for use, and uses a traction module to pull the paper to lay the paper, which greatly improves the paper laying rhythm and improves production efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for use in the embodiments.
[0021] Figure 1 This is a schematic diagram of the overall structure of the glass spacer paper laying system of the present invention.
[0022] Figure 2 It is a structural schematic diagram of the paper laying mechanism in the glass partition paper laying system of the present invention.
[0023] Figure 3 This is a schematic structural diagram of the tabletop assembly in the glass partition paper laying system of the present invention.
[0024] Figure 4 This is a structural schematic diagram of the traction mechanism in the glass spacer paper laying system of the present invention.
[0025] Figure 5 for Figure 4 A partial enlarged schematic diagram of the circled part.
[0026] Figure 6 It is a side sectional view of the glass spacer paper laying system of the present invention.
[0027] Figure 7 This is a structural schematic diagram of the second paper pressing component in the glass spacer paper laying system of the present invention.
[0028] Figure 8 This is a structural schematic diagram of the filter box in the glass spacer paper laying system of the present invention. DETAILED DESCRIPTION
[0029] In order to more clearly describe the technical content of the present invention, it is further described below in conjunction with specific embodiments.
[0030] In the description of the present invention, it should be noted that the terms "vertical", "upper", "lower", "horizontal", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, they cannot be understood as a limitation on the present invention.
[0031] It should also be noted that, in the description of this utility model, unless otherwise expressly specified or limited, the terms "disposed," "installed," "connected," and "connected" should be understood in a broad sense. For example, they may refer to fixed connections, detachable connections, or integral connections; they may refer to mechanical connections or electrical connections; they may refer to direct connections or indirect connections through an intermediate medium; and they may refer to internal communication between two components. Those skilled in the art will be able to understand the specific meanings of the above terms in this utility model based on specific circumstances.
[0032] like Figures 1 to 8The figure shows a specific embodiment of the glass interlayer paper laying system of the present invention, which is particularly suitable for ultra-thin glass TFT paper laying. The paper laying system includes: a paper laying mechanism, including a paper laying base 2, a reeling assembly, a paper cutting assembly 9 and a paper feeding assembly 8. The reeling assembly, the paper cutting assembly 9 and the paper feeding assembly 8 are all arranged on the paper laying base 2. The paper laying base 2 is the basic body of the paper laying mechanism, providing a solid body for the stable operation of the paper laying system. The reeling assembly includes a first reeling station 3 and a second reeling station 1 adjacent to the first reeling station 3. Each reeling station is used to install a paper reel. The paper feeding assembly 8 is located between the paper cutting assembly 9 and the reeling assembly. The paper feeding assembly 8 is connected to the reeling assembly. Cooperate to unwind paper synchronously; the paper cutting assembly 9 is used to cut glass spacer paper 19; the table assembly is arranged adjacent to the paper laying mechanism, and the table assembly includes a support base 4 and a table 5 arranged on the support base 4. The support base 4 is the basic frame of the table assembly and provides a stable support for the table. The support base 4 can also be configured with a ground rail, a connecting beam, a support frame, a slide rail slider, etc. The table 5 is used to provide a paper laying work surface. The main frame of the table can be built with aluminum profiles, and mirror stainless steel plates can be bent and spliced as a work surface; the traction mechanism 6 is arranged above the table 5, such as Figure 4 and Figure 5 As shown, the traction mechanism 6 includes a traction module and a clamping claw assembly connected to the traction module, the clamping claw assembly is used to clamp the end of the glass spacer paper 19 from the paper laying mechanism, and the traction module is used to drive the clamping claw assembly to move back and forth along the traction direction to pull the glass spacer paper 19 so that it covers the table 5. During the traction process, the unwinding assembly, paper feeding assembly 8 and traction mechanism 6 act synchronously; the paper pressing mechanism includes a first paper pressing assembly 10 and a second paper pressing assembly 7, and the paper cutting assembly 9 is located between the first paper pressing assembly 10 and the second paper pressing assembly 7. The first paper pressing assembly 10 and the second paper pressing assembly 7 are both used to fix the glass spacer paper 19 during the paper cutting process and pass the glass spacer paper 19 during the traction process.
[0033] The unwinding assembly can also be equipped with a chuck base, servo motor, motor mounting base, cover, safety chuck, pneumatic shaft, rigid coupling, etc. to support the paper roll and coordinate with the paper feeding assembly for synchronous unwinding. The paper cutting assembly can also be equipped with a cutting die, motor and reducer, knife holder transition plate, cutter cover, drag chain bracket, slide mounting base, module fixing connection plate, motor mounting plate, circular knife damping motor, circular knife, circular knife mounting baffle and fixing clamp for efficient paper cutting. The paper laying mechanism can also be equipped with a paper anti-static rod assembly equipped with an anti-static rod, anti-static rod fixing plate and aluminum profile to eliminate static electricity generated by friction on the paper. The unwinding assembly can also be equipped with a top block to adjust the position of the unwinding assembly.
[0034] The glass spacer paper laying system of the utility model can overcome the existing problems: large size, which is not conducive to transportation and equipment maintenance; complex structure, high processing and assembly costs; slow paper laying cycle and low production efficiency.
[0035] like Figure 6 As shown, the paper laying mechanism includes a paper threading assembly, and the paper threading assembly includes a first transition roller 25, a second transition roller 26, a third transition roller 27, and a fourth transition roller 28. The paper laying base 2 has a first mounting table 20 and a second mounting table 29 adjacent to the first mounting table 20. The height of the first mounting table 20 is lower than the height of the second mounting table 29. The unwinding assembly is installed on the first mounting table 20, and the paper cutting assembly 9 and the paper feeding assembly 8 are installed on the second mounting table 29. The first unwinding station 3 is arranged close to the second mounting table 29. The first transition roller 25 is installed below the first mounting table 20. The second transition roller The second and third transition rollers 26 and 27 are both mounted below the second mounting surface 29. The second transition roller 26 is mounted higher than the first mounting surface 20, while the third transition roller 27 is mounted lower than the first mounting surface 20. The fourth transition roller 28 is mounted on the second mounting surface 29. The glass interlayer paper on the paper reel at the second unwinding station 1 passes sequentially through the first transition roller 25, the second transition roller 26, the third transition roller 27, and the fourth transition roller 28 before entering the paper feed assembly 8. The glass interlayer paper on the paper reel at the first unwinding station 3 passes sequentially through the second transition roller 26, the third transition roller 27, and the fourth transition roller 28 before entering the paper feed assembly 8. In this embodiment, the fourth transition roller 28 also serves as a tensioning roller. The paper threading assembly of the present invention makes the entire paper laying assembly structure more compact and rational, shortening the span of the entire device, saving space and cost.
[0036] like Figure 2 and Figure 6As shown, the paper feed assembly 8 includes a passive roller 23, an active roller 22, an increasing roller 24, and a paper feed drive mechanism 11. The passive roller 23 is located above the active roller 22. The paper feed drive mechanism 11 is connected to the active roller 22 and is used to drive the active roller 22 and the passive roller 23 to rotate. The increasing roller 24 is located on one side of the active roller 22, allowing the glass interleaving paper to pass sequentially through the gaps between the increasing roller 24, the active roller 22, and the passive roller 23. The paper feed assembly may also be equipped with a lifting wing plate, a bearing seat assembly, a reducer mounting seat, a guide shaft, a guide shaft connecting plate, a fixed end cap, a cylinder connector, a cylinder, a motor, and a reducer, which synchronize with the unwinding assembly to ensure smooth paper discharge.
[0037] like Figure 1 and Figure 3 As shown, the table top 5 is connected to the cylinder drive assembly, and the cylinder drive assembly is used to drive the table top 5 to move relative to the support base 4 along the traction direction, so that after the paper cutting is completed, the table top 5 moves forward a preset distance along the traction direction to facilitate the gripping device to grab the glass stack.
[0038] like Figure 3 As shown, the table 5 has a vacuum cavity and an air vent 14 located above the vacuum cavity. The vacuum cavity of the table 5 is connected to a negative pressure pumping assembly. After the paper cutting is completed, when the table 5 moves forward along the traction direction, the negative pressure pumping assembly absorbs the glass spacer paper on the table 5 through the air vent 14 and the vacuum cavity to prevent the paper from moving.
[0039] like Figure 4 and Figure 5 As shown, the clamp assembly includes a clamp mounting rod 16 and a clamp structure 15 evenly distributed on the clamp mounting rod 16. The specific arrangement of the clamp structure can be referred to Figure 5 , or other devices with a gripper function are used. The traction module includes a traction drive assembly 18 and a pair of parallel and spaced slide rails 17. The two ends of the gripper mounting rod 16 are respectively mounted on the corresponding slide rails 17 via connecting slides. The traction drive assembly 18 is connected to the gripper mounting rod 16 to drive the gripper structure 15 to move along the slide rails 17. The traction drive assembly 18 can use a drag chain and a motor and reducer assembly.
[0040] like Figure 1 and Figure 2As shown, the first paper pressing assembly 10 is arranged on the paper laying base 2, and the first paper pressing assembly 10 is located between the paper cutting assembly 9 and the paper feeding assembly 8. The first paper pressing assembly 10 includes a paper pressing board, a paper pressing drive mechanism connected to the paper pressing board, and a supporting profile located below the paper pressing board. The supporting profile can be an aluminum profile. The glass spacer paper passes between the paper pressing board and the supporting profile. The paper pressing drive mechanism is used to drive the paper pressing board to rise and fall relative to the supporting profile. The paper pressing drive mechanism can be a cylinder drive mechanism. The first paper pressing assembly 10 can also be equipped with a paper pressing pad, a cylinder mounting frame, a profile bracket, an aluminum profile, a cylinder, etc. to fix the paper during the paper cutting process and prevent the paper from moving.
[0041] like Figure 1 and Figure 7 As shown, the second paper pressing assembly 7 includes a pair of parallel and spaced columns 30, the columns 30 are arranged on the side of the table assembly, the upper ends of the columns 30 are connected by a crossbeam 31, the crossbeam 31 is arranged above the table 5 in a direction perpendicular to the traction direction, and a lifting drive assembly 33 and a paper pressing profile 32 arranged parallel to the crossbeam 31 are arranged below the crossbeam 31. The glass spacer paper passes between the paper pressing profile 32 and the table 5, and the paper pressing profile 32 is connected to the crossbeam 31 through the lifting drive assembly 33, and the paper pressing profile 32 is driven to descend and rise relative to the crossbeam 31 by the lifting drive assembly 33. The lifting drive component 33 can be a cylinder drive component, and the paper pressing profile can be a paper pressing aluminum profile. During the paper cutting process, the paper pressing aluminum profile connected to the cylinder rod is pressed down or lifted due to the extension and contraction of its lever. When cutting paper, the cylinder rod extends out to press down and fix the paper to prevent the paper from moving. After the paper cutting is completed, the cylinder rod retracts and lifts the paper pressing aluminum profile.
[0042] like Figure 1 and Figure 2 As shown, the paper cutting assembly includes a dust shield 12, and the dust shield 12 is used to collect debris generated by the reciprocating motion of the drag chain 13 in the paper cutting assembly.
[0043] like Figure 1 and Figure 8 As shown, the paper laying system includes a filter box 34, which houses a filter element 35 for filtering paper scraps generated by the paper laying system. The paper scraps primarily come from the dust collection trough of the table assembly and from the cutter housing during paper cutting. In addition to the filter element, the filter box 34 also includes a filter box cover, an acrylic cover, a dust shield, and other accessories.
[0044] The specific action flow of the glass spacer paper laying system of the present invention when laying paper is as follows:
[0045] Manual paper threading, manually pass the paper roll around the paper threading assembly, paper feeding assembly, and first paper pressing assembly in sequence to complete paper threading; after paper threading is completed, paper is automatically laid, and the clamping claw structure in the traction mechanism clamps the edge of the paper when laying the paper. At this time, the traction drive assembly in the traction mechanism drives the clamping claw assembly to pull up the paper and pull the paper to cover the table surface. During the traction action, the unwinding assembly releases the paper and the paper feeding assembly feeds the paper synchronously; the paper is covered in place, the traction action stops, the paper pressing drive mechanism of the first paper pressing assembly and the cylinder of the lifting drive assembly of the second paper pressing assembly are activated to firmly press the paper to prevent the paper position from moving; the paper cutting assembly cuts the paper; after the paper is cut, the paper pressing drive mechanism of the first paper pressing assembly and the cylinder of the lifting drive assembly of the second paper pressing assembly are reset, and under the vacuum negative pressure adsorption of the table, the table moves outward a distance. At this time, a set of matching grippers grabs the glass and places it on the table with the paper laid, and then another gripper grabs the glass and paper and stacks them at the same time, and the table is reset to complete the entire paper laying process.
[0046] The glass partition paper laying system of this utility model has more compact functional components, reduces the occupied space, and fully considers the convenience during use and the rationality of later maintenance; it is equipped with two rolls of paper, one for backup and one for use, and uses a traction module to pull the paper to lay the paper, which greatly improves the paper laying rhythm and improves production efficiency.
[0047] In this specification, the present invention has been described with reference to specific embodiments thereof. However, it is apparent that various modifications and variations may be made without departing from the spirit and scope of the present invention. Accordingly, the specification and drawings are to be regarded as illustrative rather than restrictive.
Claims
1. A glass spacer paper laying system, characterized in that: include: The paper laying mechanism includes a paper laying base, an unwinding assembly, a paper cutting assembly, and a paper feeding assembly. The unwinding assembly, paper cutting assembly, and paper feeding assembly are all arranged on the paper laying base. The unwinding assembly includes a first unwinding station and a second unwinding station arranged adjacent to the first unwinding station. Each unwinding station is used to install a paper reel. The paper feeding assembly is located between the paper cutting assembly and the unwinding assembly. The paper feeding assembly cooperates with the unwinding assembly to synchronously unwind and discharge paper. The paper cutting assembly is used to cut glass spacer paper. A table assembly is arranged adjacent to the paper laying mechanism, the table assembly comprising a support base and a table arranged on the support base, the table being used to provide a paper laying work surface; A traction mechanism is provided above the table, comprising a traction module and a clamping claw assembly connected to the traction module, wherein the clamping claw assembly is used to clamp the end of the glass spacer paper from the paper laying mechanism, and the traction module is used to drive the clamping claw assembly to move forward and backward along the traction direction to pull the glass spacer paper so that it covers the table. During the traction process, the unwinding assembly, the paper feeding assembly, and the traction mechanism operate synchronously. The paper pressing mechanism includes a first paper pressing assembly and a second paper pressing assembly. The paper cutting assembly is located between the first paper pressing assembly and the second paper pressing assembly. The first paper pressing assembly and the second paper pressing assembly are both used to fix the glass spacer paper during the paper cutting process and pass the glass spacer paper during the traction process.
2. The glass spacer paper laying system according to claim 1, characterized in that: The paper laying mechanism includes a paper threading assembly, and the paper threading assembly includes a first transition roller, a second transition roller, a third transition roller, and a fourth transition roller. The paper laying base has a first mounting table and a second mounting table adjacent to the first mounting table. The height of the first mounting table is lower than the height of the second mounting table. The unwinding assembly is mounted on the first mounting table, and the paper cutting assembly and the paper feeding assembly are mounted on the second mounting table. The first unwinding station is arranged close to the second mounting table. The first transition roller is mounted below the first mounting table. The second transition roller is mounted below the first mounting table. The roller and the third transition roller are both installed below the second mounting table, the installation height of the second transition roller is higher than the height of the first mounting table, the installation height of the third transition roller is lower than the height of the first mounting table, and the fourth transition roller is installed on the second mounting table. The glass spacer paper of the paper reel on the second unwinding station passes through the first transition roller, the second transition roller, the third transition roller and the fourth transition roller in sequence to enter the paper feeding assembly, and the glass spacer paper of the paper reel on the first unwinding station passes through the second transition roller, the third transition roller and the fourth transition roller in sequence to enter the paper feeding assembly.
3. The glass spacer paper laying system according to claim 1, characterized in that: The table is connected to a cylinder drive assembly, which is used to drive the table to move relative to the support base along the traction direction, so that after paper cutting is completed, the table moves forward a preset distance along the traction direction to facilitate the gripping device to grab the glass stack.
4. The glass spacer paper laying system according to claim 3, characterized in that: The table has a vacuum cavity and an air vent located above the vacuum cavity. The vacuum cavity of the table is connected to a negative pressure extraction component. After paper cutting is completed, when the table moves forward along the traction direction, the negative pressure extraction component adsorbs the glass spacer paper on the table through the air vent and the vacuum cavity.
5. The glass spacer paper laying system according to claim 1, characterized in that: The clamping jaw assembly includes a clamping jaw mounting rod and a clamping jaw structure evenly distributed on the clamping jaw mounting rod. The traction module includes a traction drive assembly and a pair of slide rails arranged in parallel and spaced apart. The two ends of the clamping jaw mounting rod are respectively arranged on the corresponding slide rails through connecting slides. The traction drive assembly is connected to the clamping jaw mounting rod to drive the clamping jaw structure to move along the slide rails.
6. The glass spacer paper laying system according to claim 1, characterized in that: The first paper pressing assembly is arranged on the paper laying base, and the first paper pressing assembly is located between the paper cutting assembly and the paper feeding assembly. The first paper pressing assembly includes a paper pressing board, a paper pressing drive mechanism connected to the paper pressing board, and a supporting profile located below the paper pressing board. The glass spacer paper passes between the paper pressing board and the supporting profile. The paper pressing drive mechanism is used to drive the paper pressing board to rise and fall relative to the supporting profile.
7. The glass spacer paper laying system according to claim 1, characterized in that: The second paper pressing assembly includes a pair of columns arranged in parallel and spaced apart, the columns are arranged on the side of the table assembly, the upper ends of the columns are connected by a crossbeam, the crossbeam is arranged above the table in a direction perpendicular to the traction direction, and a lifting drive assembly and a paper pressing profile arranged parallel to the crossbeam are arranged below the crossbeam. The glass spacer paper passes between the paper pressing profile and the table, and the paper pressing profile is connected to the crossbeam through the lifting drive assembly, and the paper pressing profile is driven to descend and rise relative to the crossbeam by the lifting drive assembly.
8. The glass spacer paper laying system according to claim 1, characterized in that: The paper cutting assembly comprises a dust shield, which is used to collect debris generated by the reciprocating motion of the drag chain in the paper cutting assembly.
9. The glass spacer paper laying system according to claim 1, characterized in that: The paper feeding assembly includes a passive roller, an active roller, an increasing roller and a paper feeding drive mechanism. The passive roller is located above the active roller. The paper feeding drive mechanism is connected to the active roller and is used to drive the active roller to rotate and drive the passive roller to rotate. The increasing roller is arranged on one side of the active roller, so that the glass spacer paper passes through the gap between the increasing roller, the active roller and the passive roller in sequence.
10. The glass spacer paper laying system according to claim 1, characterized in that: The paper laying system includes a filter box, and a filter element is arranged inside the filter box for filtering paper scraps generated by the paper laying system.
Citation Information
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